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A microfiber temperature sensor based on fluorescence lifetime
Journal article   Peer reviewed

A microfiber temperature sensor based on fluorescence lifetime

Yongtan Zhao, Chenlei Pang, Zhong Wen, Yi Liu, Xvsheng Qiao, Zongyin Yang, N. Raghavan, Yiying Zhao and Qing Yang
Optics communications, Vol.426, pp.231-236
01/11/2018

Abstract

Optics Physical Sciences Science & Technology
We demonstrate micro/nanofiber temperature sensors based on micro/nano particles fluorescence lifetime. Dependence of the fluorescence intensity, branching ratio and lifetime on temperature are investigated from 30 degrees to 210 degrees. Compared with the intensity-based micro sensors, the lifetime-based micro sensors perform better in terms of accuracy, stability, and response speed. Precision of the proposed temperature sensor is obtained as high as 2 degrees in the temperature range of 30 degrees to 210 degrees. This lifetime-based sensing technology won't be affected by external deformation of the sensors, proving it is a temperature selective sensor enabling eliminating interference of surrounding environment and background noise. Experiments and simulations show that response time of the micro sensor can be 50-100 times faster than that of conventional sensors.

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